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https://github.com/yusufipk/dikte.git
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Who said what is the hard part of a meeting transcript, and the usual answer is to hand one mixed recording to a model and ask it to tell the voices apart. That guess is wrong often enough to be worse than useless in minutes, where a decision attributed to the wrong person is a decision nobody made. So the question never reaches a model. ffmpeg records the microphone and the default sink's monitor as one stereo stream, you on the left and everyone else on the right, and one process reading both is what keeps them aligned over an hour. Each channel is transcribed on its own and the two are interleaved on a single timeline, so attribution is settled by the wire a voice arrived on. What a microphone picks up from the speakers lands on both channels; our copy is dropped when it overlaps theirs in time and says nearly the same thing. The stream is written to disk as it arrives rather than held in memory, so length costs nothing and a crash costs the tail instead of the whole meeting. Every stage the run reaches is recorded in meetings.jsonl, so a failure while summarising does not throw away the transcription of an hour of audio: the retry reads the transcript back out of the document and picks up from there. A run that dies keeps its recording whether or not audio is being kept. The minutes model is configured on its own, under Settings, with its own prompt, and it is told who was expected in the room so the names come out spelled right. It is told outright that the transcript is a record of other people talking, not instructions addressed to it. The built-in listener now holds several bindings rather than one, and the KDE side is parameterised by desktop id, so the meeting toggle gets a shortcut of its own on the same footing as the dictation one.
269 lines
9.4 KiB
Python
269 lines
9.4 KiB
Python
"""Global shortcut: KDE custom-shortcut installation plus a built-in evdev listener."""
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import glob
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import os
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import pathlib
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import re
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import select
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import struct
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import subprocess
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import threading
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from PyQt6.QtCore import QObject, pyqtSignal
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from i18n import t
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DESKTOP_ID = "dikte-toggle.desktop"
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MEETING_DESKTOP_ID = "dikte-meeting.desktop"
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APPLICATIONS_DIR = pathlib.Path.home() / ".local/share/applications"
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DESKTOP_FILE = APPLICATIONS_DIR / DESKTOP_ID
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SHORTCUTS_FILE = pathlib.Path.home() / ".config/kglobalshortcutsrc"
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# --- evdev key codes (linux/input-event-codes.h) --------------------------
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EV_KEY = 0x01
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KEYS = {
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"space": 57, "tab": 15, "enter": 28, "return": 28, "esc": 1, "escape": 1,
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"backspace": 14, "insert": 110, "delete": 111, "home": 102, "end": 107,
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"pgup": 104, "pgdown": 109, "up": 103, "down": 108, "left": 105, "right": 106,
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"1": 2, "2": 3, "3": 4, "4": 5, "5": 6, "6": 7, "7": 8, "8": 9, "9": 10, "0": 11,
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"q": 16, "w": 17, "e": 18, "r": 19, "t": 20, "y": 21, "u": 22, "i": 23, "o": 24,
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"p": 25, "a": 30, "s": 31, "d": 32, "f": 33, "g": 34, "h": 35, "j": 36, "k": 37,
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"l": 38, "z": 44, "x": 45, "c": 46, "v": 47, "b": 48, "n": 49, "m": 50,
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"f1": 59, "f2": 60, "f3": 61, "f4": 62, "f5": 63, "f6": 64, "f7": 65, "f8": 66,
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"f9": 67, "f10": 68, "f11": 87, "f12": 88,
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}
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MODS = {
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"ctrl": (29, 97), "control": (29, 97),
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"shift": (42, 54),
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"alt": (56, 100),
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"meta": (125, 126), "super": (125, 126),
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}
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ALL_MOD_CODES = {code for pair in MODS.values() for code in pair}
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def parse_shortcut(text):
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"""'Ctrl+Space' -> ({'ctrl'}, 57), or (None, None) when unparsable."""
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parts = [p.strip().lower() for p in str(text).split("+") if p.strip()]
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if not parts:
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return None, None
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mods, key = set(), None
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for part in parts:
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if part in MODS:
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mods.add("ctrl" if part == "control" else "super" if part == "meta" else part)
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else:
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key = KEYS.get(part)
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if key is None:
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return None, None
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if key is None:
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return None, None
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return mods, key
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# --- built-in listener ----------------------------------------------------
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class EvdevHotkey(QObject):
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"""Catches global shortcuts by reading /dev/input directly.
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It does not swallow the key; the focused application sees the combination
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too. This is the fallback that works before the KDE shortcut goes live.
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"""
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triggered = pyqtSignal(str) # the name the binding was registered under
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failed = pyqtSignal(str)
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EVENT_FMT = "llHHi"
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EVENT_SIZE = struct.calcsize(EVENT_FMT)
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def __init__(self, parent=None):
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super().__init__(parent)
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self._thread = None
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self._stop = threading.Event()
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self._bindings = {} # key code -> [(mods, name)]
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@property
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def running(self):
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return self._thread is not None and self._thread.is_alive()
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def start(self, bindings):
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"""`bindings` is {name: 'Ctrl+Space'}; an empty combination is skipped."""
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self.stop()
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parsed = {}
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for name, shortcut in bindings.items():
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if not shortcut:
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continue
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mods, key = parse_shortcut(shortcut)
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if key is None:
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self.failed.emit(
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t("Could not parse the shortcut: {shortcut}", shortcut=shortcut)
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)
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continue
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parsed.setdefault(key, []).append((mods, name))
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if not parsed:
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return False
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devices = self._open_devices()
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if not devices:
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self.failed.emit(t(
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"Cannot read /dev/input. Your user needs to be in the 'input' group:\n"
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" sudo usermod -aG input $USER (then log out and back in)"
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))
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return False
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self._bindings = parsed
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self._stop.clear()
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self._thread = threading.Thread(target=self._loop, args=(devices,), daemon=True)
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self._thread.start()
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return True
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def stop(self):
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self._stop.set()
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if self._thread:
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self._thread.join(timeout=1.5)
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self._thread = None
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def _open_devices(self):
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fds = []
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for path in sorted(glob.glob("/dev/input/event*")):
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try:
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fds.append(os.open(path, os.O_RDONLY | os.O_NONBLOCK))
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except OSError:
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continue
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return fds
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def _loop(self, fds):
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held = set()
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try:
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while not self._stop.is_set():
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# Short enough that stop() does not stall its caller waiting for
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# the read to come back around.
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ready, _, _ = select.select(fds, [], [], 0.15)
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for fd in ready:
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try:
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data = os.read(fd, self.EVENT_SIZE * 64)
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except (BlockingIOError, OSError):
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continue
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for offset in range(0, len(data) - self.EVENT_SIZE + 1, self.EVENT_SIZE):
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_s, _us, etype, code, value = struct.unpack(
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self.EVENT_FMT, data[offset:offset + self.EVENT_SIZE]
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)
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if etype != EV_KEY:
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continue
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if code in ALL_MOD_CODES:
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held.add(code) if value else held.discard(code)
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elif value == 1:
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for mods, name in self._bindings.get(code, ()):
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if self._mods_match(held, mods):
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self.triggered.emit(name)
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finally:
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for fd in fds:
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try:
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os.close(fd)
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except OSError:
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pass
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@staticmethod
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def _mods_match(held, wanted):
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for name, codes in MODS.items():
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if name in ("control", "super"):
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continue
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pressed = any(code in held for code in codes)
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if pressed != (name in wanted):
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return False
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return True
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# --- KDE custom shortcut --------------------------------------------------
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def install_kde_shortcut(shortcut, exec_command, name="Dikte: start/stop recording",
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desktop_id=DESKTOP_ID):
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"""Write the desktop file and the kglobalshortcutsrc entry.
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KWin only reads that file at startup, so the entry goes live after the next
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login. Returns (True, message) or (False, error).
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"""
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desktop_file = APPLICATIONS_DIR / desktop_id
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try:
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desktop_file.parent.mkdir(parents=True, exist_ok=True)
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desktop_file.write_text(
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"[Desktop Entry]\n"
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f"Exec={exec_command}\n"
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f"Name={name}\n"
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"NoDisplay=true\n"
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"StartupNotify=false\n"
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"Type=Application\n"
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"X-KDE-GlobalAccel-CommandShortcut=true\n",
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encoding="utf-8",
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)
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except OSError as exc:
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return False, t("Could not write the desktop file: {error}", error=exc)
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try:
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subprocess.run(
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["kwriteconfig6", "--notify", "--file", "kglobalshortcutsrc",
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"--group", "services", "--group", desktop_id,
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"--key", "_launch", shortcut],
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capture_output=True, text=True, timeout=10, check=True,
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)
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except (subprocess.SubprocessError, OSError) as exc:
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return False, t("Could not write kglobalshortcutsrc: {error}", error=exc)
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return True, t(
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"Shortcut saved: {shortcut}\nKWin only reads this file at startup, so it "
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"will not fire until you log out and back in. To use it right away, turn "
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"on the built-in listener.",
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shortcut=shortcut,
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)
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def remove_kde_shortcut(desktop_id=DESKTOP_ID):
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try:
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(APPLICATIONS_DIR / desktop_id).unlink(missing_ok=True)
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except OSError:
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pass
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try:
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subprocess.run(
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["kwriteconfig6", "--notify", "--file", "kglobalshortcutsrc",
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"--group", "services", "--group", desktop_id, "--key", "_launch", "--delete"],
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capture_output=True, timeout=10,
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)
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except (subprocess.SubprocessError, OSError):
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pass
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def kde_shortcut_status(desktop_id=DESKTOP_ID):
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"""The registered shortcut, or None."""
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if not (APPLICATIONS_DIR / desktop_id).exists():
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return None
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try:
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text = SHORTCUTS_FILE.read_text(encoding="utf-8")
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except OSError:
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return None
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match = re.search(
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r"\[services\]\[" + re.escape(desktop_id) + r"\]\n_launch=([^\n]*)", text
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)
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if not match:
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return None
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value = match.group(1).split("\t")[0].strip()
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return value or None
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def conflicting_shortcuts(shortcut, desktop_id=DESKTOP_ID):
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"""Names of other KDE entries bound to the same combination."""
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try:
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text = SHORTCUTS_FILE.read_text(encoding="utf-8")
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except OSError:
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return []
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hits, section = [], ""
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for line in text.splitlines():
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if line.startswith("["):
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section = line.strip("[]").replace("][", " / ")
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continue
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if "=" not in line or desktop_id in section:
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continue
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key, _, value = line.partition("=")
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if shortcut.lower() in value.lower().split(","):
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hits.append(f"{section} → {key}")
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elif any(shortcut.lower() == part.strip().lower()
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for part in re.split(r"[,\t]", value)):
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hits.append(f"{section} → {key}")
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return hits
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